Journalartikel
Autorenliste: Schippers, S.; Lestinsky, M.; Müller, A.; Savin, D.W.; Schmidt, E.W.; Wolf, A.
Jahr der Veröffentlichung: 2010
Seiten: 109-121
Zeitschrift: International Review of Atomic and Molecular Physics
Bandnummer: 1
Heftnummer: 2
URL: https://www.auburn.edu/cosam/departments/physics/iramp/1_2/schippers_et_al.pdf
Verlag: Physics Department, Auburn University
This review summarizes the present status of an ongoing experimental effort to provide reliable rate coefficients for dielectronic recombination of highly charged iron ions for the modeling of astrophysical and other plasmas. The experimental work has been carried out over more than a decade at the heavy-ion storage-ring TSR of the Max-Planck-Institute for Nuclear Physics in Heidelberg, Germany. The experimental and data reduction procedures are outlined. The role of previously disregarded processes such as fine-structure core excitations and trielectronic recombination is highlighted. Plasma rate coefficients for dielectronic recombination of Feq+ ions (q = 7 – 10, 13 – 22) and Ni25+ are presented graphically and in a simple parameterized form allowing for easy use in plasma modeling codes. It is concluded that storage-ring experiments are presently the only source for reliable low-temperature dielectronic recombination rate-coefficients of complex ions.
Abstract:
Autoren/Herausgeber
Zitierstile
Harvard-Zitierstil: Schippers, S., Lestinsky, M., Müller, A., Savin, D., Schmidt, E. and Wolf, A. (2010) Dielectronic Recombination Data for Astrophysical Applications: Plasma Rate-Coefficients for Feq+ (q = 7-10, 13-22) and Ni25+ Ions from Storage-Ring Experiments, International Review of Atomic and Molecular Physics, 1(2), pp. 109-121. https://www.auburn.edu/cosam/departments/physics/iramp/1_2/schippers_et_al.pdf
APA-Zitierstil: Schippers, S., Lestinsky, M., Müller, A., Savin, D., Schmidt, E., & Wolf, A. (2010). Dielectronic Recombination Data for Astrophysical Applications: Plasma Rate-Coefficients for Feq+ (q = 7-10, 13-22) and Ni25+ Ions from Storage-Ring Experiments. International Review of Atomic and Molecular Physics. 1(2), 109-121. https://www.auburn.edu/cosam/departments/physics/iramp/1_2/schippers_et_al.pdf